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Modeling and Simulation of Linear and Nonlinear MEMS Scale Electromagnetic Energy Harvesters for Random Vibration Environments

机译:线性和非线性MEMS尺度电磁能量采集器的建模和仿真用于随机振动环境

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摘要

The simulation results for electromagnetic energy harvesters (EMEHs) under broad band stationary Gaussian random excitations indicate the importance of both a high transformation factor and a high mechanical quality factor to achieve favourable mean power, mean square load voltage, and output spectral density. The optimum load is different for random vibrations and for sinusoidal vibration. Reducing the total damping ratio under band-limited random excitation yields a higher mean square load voltage. Reduced bandwidth resulting from decreased mechanical damping can be compensated by increasing the electrical damping (transformation factor) leading to a higher mean square load voltage and power. Nonlinear EMEHs with a Duffing spring and with linear plus cubic damping are modeled using the method of statistical linearization. These nonlinear EMEHs exhibit approximately linear behaviour under low levels of broadband stationary Gaussian random vibration; however, at higher levels of such excitation the central (resonant) frequency of the spectral density of the output voltage shifts due to the increased nonlinear stiffness and the bandwidth broadens slightly. Nonlinear EMEHs exhibit lower maximum output voltage and central frequency of the spectral density with nonlinear damping compared to linear damping. Stronger nonlinear damping yields broader bandwidths at stable resonant frequency.
机译:宽带固定高斯随机激励下的电磁能量采集器(EMEH)的仿真结果表明,高转换因子和高机械品质因子对于获得有利的平均功率,均方负载电压和输出频谱密度都非常重要。对于随机振动和正弦振动,最佳负载是不同的。降低带限随机激励下的总阻尼比会产生较高的均方负载电压。可以通过增加电阻尼(变换系数)来补偿由于机械阻尼降低而导致的带宽降低,从而导致更高的均方负载电压和功率。使用统计线性化方法对具有Duffing弹簧和线性加三次阻尼的非线性EMEH进行建模。这些非线性EMEH在宽带平稳高斯随机振动的低水平下表现出近似线性的行为。但是,在这种较高激励水平下,由于增加的非线性刚度,输出电压频谱密度的中心(谐振)频率会发生偏移,带宽会略微变宽。与线性阻尼相比,使用非线性阻尼的非线性EMEH具有更低的最大输出电压和频谱密度的中心频率。较强的非线性阻尼可在稳定的谐振频率下产生更宽的带宽。

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